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Photoredox Catalysis in Organic Chemistry

机译:有机化学中的光氧化还原催化

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In recent years, photoredox catalysis has come to the forefront in organic chemistry as a powerful strategy for the activation of small molecules. In a general sense, these approaches rely on the ability of metal complexes and organic dyes to convert visible light into chemical energy by engaging in single-electron transfer with organic substrates, thereby generating reactive intermediates. In this Perspective, we highlight the unique ability of photoredox catalysis to expedite the development of completely new reaction mechanisms, with particular emphasis placed on multicatalytic strategies that enable the construction of challenging carbon-carbon and carbon-heteroatom bonds.
机译:近年来,光氧化还原催化作为一种​​激活小分子的强大策略,已成为有机化学领域的前沿研究。从一般意义上讲,这些方法依赖于金属络合物和有机染料通过与有机基质进行单电子转移从而将反应性中间体转化为化学能的能力。在此观点中,我们重点介绍了光氧化还原催化加快全新反应机制发展的独特能力,特别强调了能够构建具有挑战性的碳-碳和碳-杂原子键的多催化策略。

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